A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values

The present study aims to develop a theoretical model to investigate the mechanical performance of functionally graded rotating discs with varying thickness profiles, made of copper alloy and tungsten with various values of grading index, when subjected to mechanical and thermal loads. The proposed...

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Main Authors: E. Saber, A. Abd_Elsalam
Format: Article
Language:English
Published: Elsevier 2022-08-01
Series:Forces in Mechanics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666359722000336
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author E. Saber
A. Abd_Elsalam
author_facet E. Saber
A. Abd_Elsalam
author_sort E. Saber
collection DOAJ
description The present study aims to develop a theoretical model to investigate the mechanical performance of functionally graded rotating discs with varying thickness profiles, made of copper alloy and tungsten with various values of grading index, when subjected to mechanical and thermal loads. The proposed new approach is to be used to evaluate the mechanical properties of the FGM used at different values of the reinforcement coefficient without the need to perform a large number of tests including temperature changes. The results showed that the use of wavy thickness profile improves the mechanical response of the annular disc subjected to mechanical/thermal load.
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spelling doaj.art-7a1ed0a80ff34f0d8b673795f6bfce132022-12-22T04:01:21ZengElsevierForces in Mechanics2666-35972022-08-018100103A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index valuesE. Saber0A. Abd_Elsalam1Mechanical Engineering Department, College of Engineering and Technology, Arab Academy for Science and Technology, Alexandria, EgyptCorresponding author.; Mechanical Engineering Department, College of Engineering and Technology, Arab Academy for Science and Technology, Alexandria, EgyptThe present study aims to develop a theoretical model to investigate the mechanical performance of functionally graded rotating discs with varying thickness profiles, made of copper alloy and tungsten with various values of grading index, when subjected to mechanical and thermal loads. The proposed new approach is to be used to evaluate the mechanical properties of the FGM used at different values of the reinforcement coefficient without the need to perform a large number of tests including temperature changes. The results showed that the use of wavy thickness profile improves the mechanical response of the annular disc subjected to mechanical/thermal load.http://www.sciencedirect.com/science/article/pii/S2666359722000336PerformanceRotating discsGeometric parametersFGMsThermal loadingMechanical loading
spellingShingle E. Saber
A. Abd_Elsalam
A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values
Forces in Mechanics
Performance
Rotating discs
Geometric parameters
FGMs
Thermal loading
Mechanical loading
title A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values
title_full A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values
title_fullStr A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values
title_full_unstemmed A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values
title_short A theoretical model for investigating the thermo-mechanical performance of functionally graded rotating discs with varying grading index values
title_sort theoretical model for investigating the thermo mechanical performance of functionally graded rotating discs with varying grading index values
topic Performance
Rotating discs
Geometric parameters
FGMs
Thermal loading
Mechanical loading
url http://www.sciencedirect.com/science/article/pii/S2666359722000336
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AT aabdelsalam atheoreticalmodelforinvestigatingthethermomechanicalperformanceoffunctionallygradedrotatingdiscswithvaryinggradingindexvalues
AT esaber theoreticalmodelforinvestigatingthethermomechanicalperformanceoffunctionallygradedrotatingdiscswithvaryinggradingindexvalues
AT aabdelsalam theoreticalmodelforinvestigatingthethermomechanicalperformanceoffunctionallygradedrotatingdiscswithvaryinggradingindexvalues